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The Philosophy of Science and Engineering Design


The Philosophy of Science and Engineering Design
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Beschreibung

Introduction

Chapter 1: Function ascription and explanation: elaborating an explanatory utility desideratum for ascriptions of technical functions
1 Introduction 2 Functional vs. teleological explanation: why was artifact x produced? 2.1. The ICE theory of technical functions 2.2. Heuristics of technical function ascriptions 3 Malfunction explanation 3.1 malfunction analysis: an engineering example 4 Conclusions
Chapter 2: Mechanistic Explanation in Engineering Science
1 Introduction 2 Mechanistic explanation in engineering science 2.1 Mechanistic explanation and (role) functional individuation 2.2 Function and functional decomposition in engineering 2.3 Reverse engineering explanation (and redesign) 2.4. Malfunction explanation 2.5 Capturing mechanistic explanation in engineering science: pluralism about mechanistic role functions 3 Explanation and systems thinking: where engineering and systems biology meet 3.1 Engineering and mechanistic explanation in system biology: the e.coli heat shock case 4 Explanatory power: Rethinking the explanatory desiderata of 'abstraction' and 'completeness and specificity' 4.1. Explaining robustness: complete and specific models 4.2 malfunction explanation: local specificity and global abstraction 4.3 malfunction explanation in biology
Chapter 3: Dissolving the 'problem of the absent artifact': design representations as means for counterfactual understanding and knowledge generalization
Introduction 1 The problem of the absent artifact 2 Dissolving the problem of the absent artifact 3 Roles of design representations 3.1 Explanation and counterfactual understanding 3.2 Abstraction, idealization, generalization, and unification 4 Conclusion
Chapter 4: On testing engineering design methods: explanation, reverse engineering, and constitutive relevance
1 Introduction 2 Mechanistic explanation: explanation by decomposition 2.1. Mechanistic explanation 3 Mutual manipulability and the causal-constitutive relevance distinction 3.1. Mutual manipulability 3.2. Fat-handedness and mutual manipulability combined 4. Testing (reverse) engineering design methods: applying mutual manipulability 4.1 Mechanistic reverse engineering explanation 4.2 Testing case 4.3 The goodness of design representations 5 Outlook and conclusions

Eigenschaften

Breite: 149
Gewicht: 168 g
Höhe: 7
Länge: 237
Seiten: 75
Sprachen: Englisch
Autor: Dingmar van Eck

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